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首页> 外文期刊>RSC Advances >Fabrication of an EGF modified nanodiamonds-based anti-cancer drug targeted delivery system and drug carrier uptake visualization by 3D Raman microscopy
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Fabrication of an EGF modified nanodiamonds-based anti-cancer drug targeted delivery system and drug carrier uptake visualization by 3D Raman microscopy

机译:通过3D拉曼显微镜制备EGF改性纳米二胺的抗癌药物靶向递送系统和药物载体吸收可视化

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摘要

A nanodiamonds-based anti-cancer drug targeted delivery system, Epidermal Growth Factor (EGF)-nanodiamonds (NDs)-cisplatin (ENC) bioconjugate was developed. Due to the effect of the specific biorecognition process of EGF (a kind of targeting molecule), human liver hepatocellular carcinoma (HepG2) cells could be selectively killed by the ENC system, even in a lower concentration of the cisplatin (a kind of anti-cancer drug) comparing to the traditional drug therapy. The cytotoxicity of ENC could be blocked by EGFR antibody in cancer cells, revealing the specificity of its targeting ability. Because the morphological change of HepG2 cells treated by ENC was observed, from epithelial to mesenchymal-like shape, the related mechanism was evaluated. The results showed that E-cadherin expression declined after ENC treatment, while vimentin expression did not change. The decrease of E-cadherin expression means the loss of cell-cell adhesion. Loose cells provided more specific surface area for drug absorption. Based on these advantages, ENC delivery system would be a promising targeting drug delivery system. Moreover, we located the spatial distribution of ENC system in cells by using the NDs existing in ENC as Raman probe through 3-dimensional (3D) confocal Raman imaging, i.e., we were able to visualize the process of uptake of ENC into living cancer cells, which is helpful to observe the specific biorecognition process between EGF and its receptor (EGFR) in a physiology condition and the cellular uptake of ENC drug delivery system. The present study demonstrates that drug-loaded NDs have a potential as novel intravascular probes for both diagnostic (e.g., imaging) and therapeutic purposes (e.g., targeted drug delivery).
机译:开发了一种基于纳米二胺的抗癌药物靶向递送系统,表皮生长因子(EGF)-NANODIMOND(NDS) - CCISPLATIN(ENC)生物缀合物。由于EGF(一种靶向分子)的特异性生物认知过程的影响,即使在顺铂的较低浓度下,人肝肝细胞癌(HepG2)细胞也可以选择性地杀死(一种抗癌症药物)与传统药物治疗相比。 ENC的细胞毒性可以通过癌细胞中的EGFR抗体阻断,揭示其靶向能力的特异性。因为观察到通过ENC处理的HEPG2细胞的形态变化,从上皮到间充质的形状,评价相关机制。结果表明,ENC治疗后E-Cadherin表达下降,而Vimentin表达没有变化。 e-cadherin表达的降低意味着细胞 - 细胞粘附的损失。松散的细胞提供了更具体的表面积用于药物吸收。基于这些优点,ENC递送系统将是一个有前途的靶向药物输送系统。此外,我们通过使用IN ENC中的NDS通过三维(3D)共聚焦拉曼成像,即,通过三维(3D)共焦拉曼成像,所以我们能够将ENC的摄入过程可视化为活性癌细胞的eNC系统在细胞中的空间分布,这有助于观察EGF和其受体(EGFR)的特异性生物释认过程在生理病症和EM药物递送系统的细胞摄取。本研究表明,载药的ND具有诊断(例如,成像)和治疗目的的新型血管内探针(例如,靶向药物递送)。

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  • 来源
    《RSC Advances》 |2016年第50期|共9页
  • 作者单位

    Chinese Acad Sci Tech Inst Phys &

    Chem Key Lab Photochem Convers &

    Optoelect Mat Beijing 100190 Peoples R China;

    Chinese Acad Sci Tech Inst Phys &

    Chem Key Lab Photochem Convers &

    Optoelect Mat Beijing 100190 Peoples R China;

    Peking Univ Sch Pharmaceut Sci Dept Pharmaceut Anal Beijing 100191 Peoples R China;

    Peking Univ Canc Hosp &

    Inst Dept Pharm Beijing 100142 Peoples R China;

    Peking Univ Third Hosp Dept Radiat Oncol Beijing 100191 Peoples R China;

    Chinese Acad Sci Tech Inst Phys &

    Chem Key Lab Photochem Convers &

    Optoelect Mat Beijing 100190 Peoples R China;

    Chinese Acad Sci Tech Inst Phys &

    Chem Key Lab Photochem Convers &

    Optoelect Mat Beijing 100190 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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